IP Library Granted Patent US 8,495,888
Granted Patent B2
US 8,495,888 · App. 13/325,971 · Granted Jul 30, 2013

Adaptive real-time optimization control

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Quick Facts
Patent No.
US 8,495,888
App. No.
13/325,971
Granted
Jul 30, 2013
Kind
B2
Abstract

A computerized method for operating a process includes using at least one sensor to determine when to transition a state machine between a first operating state wherein the process is operated using extremum seeking control and a second operating state wherein the process is operated without extremum seeking control. The method further includes, in response to the determination, automatically transitioning from the first operating state to the second operating state.

Claims (36)

1. A controller for a process, comprising:

a processing circuit configured as state machine to transition the controller and the process from a first operating state to a second operating state;

an output coupled to the processing circuit, wherein the processing circuit uses the output to provide control signals to a ventilation affecting device;

wherein in the first operating state the processing circuit operates the process using extremum seeking control; and

wherein in the second operating state the processing circuit operates the process without using extremum seeking control;

wherein the transition boundary between the first operating state and the second operating state is automatically adjusted by recalculating a specific volume of outdoor air threshold.

2. The controller of Claim 1 , wherein the ventilation affecting device affects a fraction of outdoor air used for cooling.

3. The controller of claim 2 , wherein the extremum seeking control of the first operating state is configured to seek the fraction of outdoor air used for cooling that minimizes power consumption of a mechanical cooling device.

4. The controller of claim 3 , wherein the second operating state is a state in which the fraction of outdoor air is held in a maximum level while the mechanical cooling device is varied to meet cooling demands.

5. The controller of claim 3 , wherein the second operating state is a state in which the fraction of outdoor air used for cooling is held at a minimum level while the mechanical cooling device is controlled to meet cooling demands.

6. The controller of claim 5 , wherein the processing circuit is further configured to transition the controller and the process from the first operating state to a third operating state.

7. The controller of claim 6 , wherein the third operating state is a state in which the fraction of outdoor air used for cooling is held at a maximum level while the mechanical cooling device is varied to meet cooling demands.

8. The controller of claim 7 , wherein the processing circuit is configured to transition between the first operating state, wherein the processing circuit operates the process using extremum seeking control, and the third operating state by evaluating humidity and temperature of the outdoor air.

9. The controller of claim 8 , wherein the processing circuit is configured to transition between the first operating state wherein the processing circuit operates the process using extremum seeking control and the second operating state by evaluating humidity and specific volume of the outdoor air.

10. A computerized method for operating a process, comprising:

using at least one sensor input to determine when to transition a state machine between a first operating state wherein the process is operated using extremum seeking control and a second operating state wherein the process is operated without extremum seeking control; and

in response to the determination, automatically transitioning from the first operating state to the second operating state; wherein the computerized method is conducted by a controller for providing control signals to a ventilation affecting device, wherein a transition boundary between the first operating state and the second operating state is automatically adjusted by recalculating a specific volume of outdoor air threshold.

11. The computerized method of claim 10 , wherein the process comprises cooling a building space by controllably varying an amount of outdoor air introduced into the building space.

12. The computerized method of Claim 10 , wherein the ventilation affecting device is a damper having an actuator that receives a control signal from the controller.

13. A computerized method for operating a process, comprising:

using at least one sensor input to determine when to transition a state machine between a first operating state wherein the process is operated using extremum seeking control and a second operating state wherein the process is operated without extremum seeking control; and

in response to the determination, automatically transitioning from the first operating state to the second operating state; wherein the computerized method is conducted by a controller for providing control signals to a ventilation affecting device, wherein a transition boundary between the first operating state and the second operating state is automatically adjusted by recalculating an enthalpy of outdoor air threshold.

14. The computerized method of claim 13 , wherein the process comprises cooling a building space by controllably varying an amount of outdoor air introduced into the building space.

15. The computerized method of claim 13 , wherein the ventilation affecting device is a damper having an actuator that receives a control signal from the controller.

16. A controller for a process, comprising:

a processing circuit configured as state machine to transition the controller and the process from a first operating state to a second operating state;

an output coupled to the processing circuit, wherein the processing circuit uses the output to provide control signals to a ventilation affecting device;

wherein in the first operating state the processing circuit operates the process using extremum seeking control; and

wherein in the second operating state the processing circuit operates the process without using extremum seeking control;

wherein a transition boundary between the first operating state and the second operating state is automatically adjusted by recalculating an enthalpy of outdoor air threshold.

17. The controller of claim 16 , wherein the ventilation affecting device affects a fraction of outdoor air used for cooling.

18. The controller of claim 17 , wherein the extremum seeking control of the first operating state is configured to seek the fraction of outdoor air used for cooling that minimizes power consumption of a mechanical cooling device.

19. The controller of claim 18 , wherein the second operating state is a state in which the fraction of outdoor air used for cooling is held at a minimum level while the mechanical cooling device is controlled to meet cooling demands.

20. The controller of claim 19 , wherein the processing circuit is further configured to transition the controller and the process from the first operating state to a third operating state.

21. The controller of claim 20 , wherein the third operating state is a state in which the fraction of outdoor air used for cooling is held at a maximum level while the mechanical cooling device is varied to meet cooling demands.

22. The controller of claim 21 , wherein the processing circuit is configured to transition between the first operating state, wherein the processing circuit operates the process using extremum seeking control, and the third operating state by evaluating humidity and temperature of the outdoor air.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 15, 2024
From: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
To: TYCO FIRE & SECURITY GMBH
Reel/Frame 066800/0629 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 4, 2022
From: JOHNSON CONTROLS TECHNOLOGY COMPANY
To: JOHNSON CONTROLS TYCO IP HOLDINGS LLP
Reel/Frame 058959/0764 →